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髓鞘碱性蛋白基因在髓鞘缺陷少突胶质细胞中的原位分析:反义核不均一RNA与通读转录

In situ analysis of myelin basic protein gene expression in myelin-deficient oligodendrocytes: antisense hnRNA and readthrough transcription.

作者信息

Fremeau R T, Popko B

机构信息

Department of Neurobiology, Duke University Medical Center, Durham, NC 27710.

出版信息

EMBO J. 1990 Nov;9(11):3533-8. doi: 10.1002/j.1460-2075.1990.tb07562.x.

Abstract

Mice homozygous for the recessive mutation myelin deficient (mld) exhibit a severe deficit in the synthesis of myelin basic protein (MBP). The primary defect in mld mice is an unusual rearrangement of the MBP gene. The mld MBP locus consists of two tandem MBP genes that span approximately 90 kb of DNA; the upstream gene contains an extensive inversion of its 3' region, while the downstream gene appears identical to the wild-type gene. In this report, the aberrant expression of the mld MBP locus was examined by in situ hybridization with MBP genomic and cDNA probes. In situ hybridization with a single-stranded genomic probe from the inverted region of the mld MBP gene revealed that primary transcripts initiating from the upstream MBP promoter elongate through the inverted region generating abundant antisense MBP heterogeneous nucleus RNA (hnRNA) transcripts in mld oligodendrocytes. Little or no antisense MBP RNA was detected in cytoplasmic regions in mld brain sections indicating that the antisense MBP hnRNA transcripts are not processed and transported out of the nucleus. Furthermore, we provide evidence that these abnormal transcripts elongate through the downstream MBP gene's promoter region, suggesting that transcription of the downstream mld MBP gene is inhibited by readthrough transcripts that originate at the upstream promoter.

摘要

纯合隐性突变髓磷脂缺陷(mld)的小鼠在髓磷脂碱性蛋白(MBP)的合成方面表现出严重缺陷。mld小鼠的主要缺陷是MBP基因的异常重排。mld MBP基因座由两个串联的MBP基因组成,跨越约90 kb的DNA;上游基因的3'区域有广泛的倒位,而下游基因似乎与野生型基因相同。在本报告中,通过用MBP基因组和cDNA探针进行原位杂交来检测mld MBP基因座的异常表达。用来自mld MBP基因倒位区域的单链基因组探针进行原位杂交显示,从上游MBP启动子起始的初级转录本延伸通过倒位区域,在mld少突胶质细胞中产生大量反义MBP异质核RNA(hnRNA)转录本。在mld脑切片的细胞质区域中几乎检测不到或未检测到反义MBP RNA,这表明反义MBP hnRNA转录本未被加工并转运出细胞核。此外,我们提供的证据表明,这些异常转录本延伸通过下游MBP基因的启动子区域,这表明下游mld MBP基因的转录受到起源于上游启动子的通读转录本的抑制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e711/552102/76384f6badab/emboj00238-0120-a.jpg

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